界面膜

  • 网络Interfacial film;Interface film;SEI
界面膜界面膜
  1. 乳状液界面膜厚度与结构

    Thickness and structure of the interfacial film of emulsion

  2. 研究结果表明,除静电斥力效应和固体界面膜的稳定作用之外,O/W型界面乳化液中的三维结构障碍也是其主要的稳定因素。

    The results show that three-dimensional structure exists in the emulsions and it is the third major factor dominating the emulsion stability besides the electrostatic repulsive force between droplets and the solid interfacial film .

  3. 锂离子电池中固体电解质界面膜(SEI)研究进展

    Progress in Solid Electrolyte Interface in Lithium Ion Batteries

  4. 预充制度对锂离子蓄电池固体电解质相界面膜(SEI)的形成有重要的影响。

    Pre-charge conditions have great impact on the formation of SEI for Li-ion batteries .

  5. 本文综述了锂离子电池中固体电解质界面膜(EI膜)研究进展。

    The research progress of solid electrolyte interface ( SEI ) film in lithium ion batteries is reviewed .

  6. 考察复合材料在锂离子电池中的电化学性能,交流阻抗研究揭示复合材料上形成了稳定的固体电解质相界面膜(SEI),锂离子能可逆地嵌入/脱嵌。

    Ac impendence spectra revealed that there is a fine solid electrolyte interphase film ( SEI ) on the surface of the composites , the fact shows that lithium ion can reversibly insert / extract the Electrode .

  7. 研究表明,在初次循环过程中,BS具有较低的最低空轨道能量,优先于溶剂在石墨电极上还原分解,并形成固体电解质相界面膜(SEI膜)。

    The results indicate that BS has lower LUMO energy than the solvents and is reduced prior to solvent compositions of the electrolyte on graphite electrode , forming a stable solid electrolyte interface ( SEI ) film during the first cycle .

  8. 系统地阐述了钝化膜即固体电解质相界面膜(SEI膜)对锂电极性能的影响、SEI膜的结构与组成、SEI膜的形成机制以及锂盐、溶剂种类对锂溶解-沉积过程的影响。

    The relations between solid electrolyte interphase ( SEI ) film and performance of lithium electrode , the composition and texture of SEI film , the formation mechanisms of SEI film , and the influence of lithium salt anions and solvents on the lithium dissolution-deposition were stated systematically .

  9. 界面膜引发的乳化燃油燃烧中的振荡反应

    Oscillating Reaction in Combustion of Emulsion Fuels Induced by Interface Membrane

  10. 布儒斯特角显微镜及其在气液界面膜研究中的应用

    Brewster Angle Microscope and its Application in Air / Liquid Monolayer Investigation

  11. 表面活性剂吸附到油水界面上改变界面膜的性质。

    Interfacial membrane changed because of the surfactant adsorbing .

  12. 高分子水基微粒形态与界面膜性质的关系

    Relationship between the property of interfacial layer and waterborne particles of polymer resin

  13. 锂离子电池界面膜形成功能分子的研究现状

    Additives of Interphase Film Formation for Lithium Ion Batteries

  14. 油水界面膜强度越高,乳状液越稳定。

    The higher of oil-water interfacial film intensity , the more stable the emulsion .

  15. 沥青质和胶质的乳状液稳定性及其界面膜性质研究

    The research of stability of emulsions and Interfacial film properties of asphaltenes and resins

  16. 本文建立了一个简单的W/O/W多重乳液液膜模型,通过简单界面膜与乳状液体系宏观界面的对比,得到了多重乳液在渗透压下的聚并情况。

    In this paper , we establish a simple model of W / O / W multiple emulsions .

  17. 对复配型破乳剂的作用机理分析,主要有两点:1、改变乳状液界面膜的性质,降低界面张力和液滴寿命;

    Changing the nature of interfacial film in emulsion , reducing interface tension and the life of liquid drop .

  18. 原油乳状液稳定性研究Ⅵ.界面膜特性与原油乳状液稳定性

    INVESTIGATION OF STABILITY OF WATER IN CRUDE OIL EMULSIONS ⅵ . Properties of Interfacial Film and Stability of Crude Oil Emulsions

  19. 对于反应物不相容的反应过程则可以通过相界面膜反应器来实现,不仅能够避免溶剂的使用,还简化了反应过程。

    In particular , interphase membrane reactor avoids the use of organic solvents and simplifies the reaction process for immiscible reactants .

  20. 用TX10和聚苯乙烯磺酸钠复配可提高油水界面的界面膜强度、乳化作用增强。

    The intensity of interface was improved and the emulsification was enhanced using the mixture of TX 10 and sodium polystyrene sulfonate .

  21. 随着剪切速率的增大,界面膜结构被破坏,油水界面粘度减小。

    While the shear rate increased , the structure of the oil-water interfacial film destroyed , and the value of the interfacial viscosity decreased .

  22. 蜡晶能改变界面膜的流变特性,增加界面膜的强度和乳状液的稳定性。

    Wax particles can contribute to the rheological properties of the film , and enhance the strength of the film and the stability of the emulsions .

  23. 测定了在破乳剂作用下原油乳状液的油水界面张力、界面膜强度及破乳脱水率。

    Water / crude oil interfacial tension , interfacial film strength and percentage of removed water from crude oil emulsions in the presence of demulsifiers was measured .

  24. 指出在今后的研究中,正极表面与电解液间的界面膜,以及引入水溶性粘合剂体系后正负极表面与电解液间的相互作用将成为人们关注的热点。

    The SEI film formed on cathode surface and the interaction between electrodes based on aqueous binding materials and electrolyte solution would be the hotspot in the future .

  25. 另外,乳化剂在亲水胶体的疏水部分的吸附作用也可能导致了胶与乳化剂复合界面膜的形成从而使粘弹性质的增加。

    In addition , the adsorption of emulsifier on the hydrophobic part of the hydrocolloid could have formed a mixed interfacial film of gum and emulsifier that increased viscoelastic properties .

  26. 再到O/W转变点处,认为是水解反应机理不同和界面膜极性改变造成的。

    , and B. C. to O / W , and this was considered to be caused by the different hydrolysis mechanism and the change of polarity in interfacial films .

  27. 与其他的乳液类似,采出水的稳定机制如下:界面张力稳定,界面膜稳定,双电层稳定,空间稳定和固体颗粒稳定。

    Similar to other emulsions , the stabilization mechanisms of produced water are as follows : interfacial tension stability , interfacial film stability , and double-layer stability , space stability and solid particles stability .

  28. 近年来,随着理论模型和实验技术的进展,界面扩张流变研究逐渐成为界面膜性质研究的一大热点。

    With the developments of the theoretical model and the experimental technology , the research of the interfacial dilational rheology has become one of the research hotspots of the interfacial film properties in recent years .

  29. 油水界面间形成界面膜的屈服值随着乳化剂的含量增加逐步增加,且机油体系比柴油体系的界面屈服值大。

    Interfacial film formed from oil-water interface . The yield value of interfacial film increase as the emulsifier content increase , and the yield value of motor model oil system is larger than diesel oil system .

  30. 在油水界面,由原油界面活性组分形成的界面膜具有较强的结构,油水界面压、界面粘度、界面屈服值可作为衡量界面膜结构强度的参数;

    There is a strongly structured interfacial film between the water and oil phases . The interfacial pressure , interfacial viscosity and interfacial primary yield value of the film can be the parameters for evaluating the strength of the film and the stability of the emulsions .